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Photodynamic therapy in endodontic root canal treatment significantly increases bacterial clearance, preventing apical periodontitis

机译:牙髓根管治疗中的光动力学治疗显着提高了细菌间隙,防止了顶端牙周炎

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Objective: To analyze the antimicrobial activity of photodynamic therapy as an adjunct to conventional endodontic treatment, particularly against Enterococcus faecalis. Method and materials: A total of 42 single-rooted teeth obtained from 33 patients with apical periodontitis were included. Sampling was developed in three stages: (1) immediately after accessing the root canal, (2) after chemical and mechanical instrumentation, and finally, (3) after photodynamic therapy application. The bacterial load of each sample was quantified by seeding on blood agar plates and selective M-Enterococcus agar. All growing colonies were identified using MALDI-TOF (Bruker; matrix-assisted laser desorption/ionization time-of-flight), and the entire bacterial microbiota composition was determined in the first sample by PCR-DGGE (polymerase chain reaction denaturing gradient gel electrophoresis), using 16 rDNA primers and selective nucleotide sequencing. Results: The endodontic therapy obtained a mean reduction in the cultivable bacterial load of 1.12 log, whereas the photodynamic therapy combination significantly increased the bacterial clearance (P < .0001). Viable cells of E faecalis were detected in 16.6% of root canals, with a mean value of 93 CFU per tooth, which was reduced to 67 and 9 CFU/tooth after conventional endodontic and photodynamic therapy treatments, respectively. Molecular E faecalis detection demonstrated that this species was present in 23.2% of baseline samples. DGGE analysis demonstrated the existence of a more complex microbiota than those observed using classical cultures. Conclusion: Photodynamic therapy as an adjunct to root canal treatment produces a significant reduction in E faecalis bacterial load, and it should be considered in the prevention of apical periodontitis.
机译:目的:分析光动力疗法作为常规牙髓治疗辅助的抗微生物活性,特别是对肠球菌粪便。方法和材料:包括从33例患有顶端牙周炎患者获得的42个单生牙齿。采样是三个阶段开发的:(1)在进入根管,(2)后立即在化学和机械仪器后,最后,光动力治疗施用后(3)。通过在血液琼脂平板上播种和选择性M肠球菌琼脂来定量每种样品的细菌载荷。使用MALDI-TOF(BRUKER;辅助激光解吸/电离飞行时间)鉴定所有生长菌落,并且通过PCR-DGGE(聚合酶链式反应变性梯度凝胶电泳,在第一样品中测定整个细菌微生物群组合物),使用16 rdNA引物和选择性核苷酸测序。结果:牙髓疗法获得了1.12对数的可培养细菌负荷的平均降低,而光动力治疗组合显着增加了细菌间隙(P <.0001)。在16.6%的根罐中检测到e粪虫的活细胞,平均每齿的93cfu,分别在常规牙髓动力学治疗后减少到67和9 cfu /牙齿。分子e粪便检测表明,该物种的33.2%的基线样品存在。 DGGE分析证明存在比使用古典文化观察到的微生物群。结论:光动力学治疗作为根管治疗的辅助治疗产生显着降低了e粪便细菌载荷,但应考虑在预防顶端牙周炎。

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